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Energy efficiency for the multiport power converters architectures of series and parallel hybrid power source type used in plug-in/V2G fuel cell vehicles

机译:插入式/ V2G燃料电池汽车中使用的串联和并联混合电源类型的多端口电源转换器架构的能效

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In this paper it is presented a mathematical analysis of the energy efficiency for the Multiport Power Converter (MPC) used in series and parallel Hybrid Power Source (HPS) architectures type on the plug-in Fuel Cell Vehicles (PFCVs). The aim of the analysis is to provide general conclusions for a wide range of PFCV operating regimes that are chosen for efficient use of the MPC architecture on each particular drive cycle. In relation with FC system of PFCV, the Energy Storage System (ESS) can operate in following regimes: (1) Charge-Sustaining (CS), (2) Charge-Depleting (CD), and (3) Charge-Increasing (CI). Considering the imposed window for the ESS State-Of-Charge (SOC), the MPC can be connected to renewable plug-in Charging Stations (PCSs) to exchange power with Electric Power (EP) system, when it is necessary for both. The Energy Management Unit (EMU) that communicates with the EP system will establish the moments to match the PFCV power demand with supply availability of the EP grid, stabilizing it. The MPC energy efficiency of the PFCVs is studied when the ESS is charged (discharged) from (to) the home/PCS/EP system. The comparative results were shown for both PFCV architectures through the analytical calculation performed and the appropriate Matlab/Simulink~® simulations presented.
机译:在本文中,对插电式燃料电池汽车(PFCV)上串联和并联混合动力源(HPS)架构中使用的多端口功率转换器(MPC)的能效进行了数学分析。该分析的目的是为广泛选择的PFCV操作方案提供一般性结论,以便在每个特定的行驶周期上有效使用MPC架构。对于PFCV的FC系统,储能系统(ESS)可以按以下方式运行:(1)电荷保持(CS),(2)电荷消耗(CD)和(3)电荷增加(CI) )。考虑到ESS充电状态(SOC)的强制窗口,可以将MPC连接到可再生插入式充电站(PCS),以在需要两者的情况下与电力(EP)系统交换电力。与EP系统通信的能源管理单元(EMU)将确定时刻,以使PFCV电力需求与EP电网的供电可用性相匹配,从而使其稳定。当ESS从家庭/ PCS / EP系统充电(放电)时,将研究PFCV的MPC能量效率。通过执行的分析计算和适当的Matlab /Simulink®仿真,显示了两种PFCV架构的比较结果。

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